The present invention relates to a modular planting system for roof applications, and in particular to a modular planting system that includes a plurality of planter modules each including a planter and a removable collar member extending upwardly from an uppermost portion of the planter, thereby allowing plant matter to extend above the upper edge of the associated planter and the removable collar to be removed once the planter module is placed adjacent to a plurality of other planter modules, thereby creating a green-roof system.
Green-roof systems are used in a wide variety of applications, including commercial and residential buildings. The positive thermal properties of the systems result in significant cost savings with respect to cooling of the associated buildings and structures. Further, the systems dramatically reduce the amount of water runoff caused by rainfall, which is particularly critical in urban areas. The systems typically include a soil or aggregate matter supporting plants therein, and barrier layers for protecting the underlying roof and for providing the necessary water barriers and drainage for the associated plants. These methods may include the application of seed-including soils to the selected roof area. However, this method typically requires a significant amount of time until the plants provide adequate coverage. Other methods that have been employed include the use of modular systems, thereby reducing the grow-time required in order to provide adequate coverage by allowing plants to at least partially mature prior to being utilized within a green roof system. However, these systems employ normal planter boxes wherein the plant matter rests below an uppermost edge of the associated planter or container. Such methods, while a vast improvement over previous methods, typically result in several months to years of grow time while the individual sections grow and subsequently fuse together to provide adequate roof coverage. Another problem typically associated with past methods is the inadequacy of water supply, drainage and transport between the associated sections.
A planted roof system is desired that provides adequate roof coverage quickly and economically, while simultaneously being easy to install at a relative low cost. Further, the system should provide improved water communication between the modules that comprise the overall system, and allow easy maintenance thereof.
One aspect of the present invention is to provide a green roof planter module that comprises a planter, including a bottom wall, a plurality of sidewalls that cooperate with the bottom wall to form an interior space, and at least one support tab that extends inward towards the interior space from at least a select one of the bottom wall and the plurality of sidewalls. The planter module further comprises a removable collar member extending upwardly from at least a select one of the plurality of sidewalls, wherein the collar member is supported within the interior space by the at least one support tab, and wherein the collar member is adapted to retain a plant matter that extends above the plurality of sidewalls.
Another aspect of the present invention is to provide a green roof planter module that comprises a planter including a bottom wall, a plurality of sidewalls, including an upper edge and that cooperate with the bottom wall to form an interior space, wherein the upper edge of each of the sidewalls includes an upwardly-opening channel. The planter module further comprises a removable collar member extending upwardly from at least a select one of the plurality of sidewalls, wherein the collar member is supported within the channels of the sidewalls and extends inwardly from the top edges of the sidewalls, and wherein the collar member is adapted to retain a plant matter that extends above the plurality of sidewalls.
Yet another aspect of the present invention is to provide a method for installing a modular green roof system that comprises providing a planter that includes a bottom wall and a plurality of sidewalls, each having an upper edge and that cooperate with the bottom wall to inform an interior space, and providing a removable collar member having a bottom edge and a top edge. The method further includes inserting the removable collar into the interior space of the planar such that the removable collar extends upwardly from at least a select one of the plurality of sidewalls, and placing and growing a plant matter within the interior space of the planter such that at least a portion of the plant matter extends upwardly from the upper edge of the plurality of sidewalls. The method still further includes positioning the planter proximate to at least one other planter, and removing the collar member from within the interior space of the planter such that a portion of the plant matter extending upwardly from the upper edge of the planter abuts a portion of plant matter extending upwardly from an upper edge of the at least one other planter.
Yet another aspect of the present invention is to provide a green roof planter module that comprises a planter including a bottom wall, a plurality of sidewalls that cooperate with the bottom wall to form an interior space, and at least one aperture extending through at least one of the sidewalls of the plurality of sidewalls The planter module further comprises a removable collar member extending upwardly from at least a select one of the plurality of sidewalls, wherein the collar includes at least one relief therein, and wherein the collar member is adapted to retain a plant matter that extends above the plurality of sidewalls, and a retainer member that extends into the at least one aperture of the at least one sidewall of the planter and the at least one relief of the collar, thereby removably retaining at least a portion of the collar within the interior space of the planter.
Still yet another aspect of the present invention is to provide a green roof planter module that comprises a bottom wall adapted to support a planter module from a supporting surface, a pair of sidewalls extending upwardly from the bottom wall, and a pair of end walls extending upwardly from the bottom wall, wherein the bottom wall, the sidewalls and the end wall cooperate to form an interior space. The planter module further comprises a pair of release extending into a portion of the bottom wall and the end walls, wherein the release are adapted to provide clearance between the planter module and a supporting surface to allow a user to grip the planter module.
Another aspect of the present invention is to provide a green roof planter module that comprises a planter including a bottom walt, and a plurality of sidewalls that cooperate with the bottom wall to form an interior space, wherein each of the sidewalls includes a top edge and a bottom edge, at Least one of the sidewalls of the plurality of sidewalls includes a relief extending through the at least one sidewall and extending greater than half of a distance between the top edge to the bottom edge of the at least one sidewall, wherein the relief is adapted to provide fluid communication between the planter module and a proximate second planter module.
Still yet another aspect of the present invention is to provide a green roof planter module that comprises a drainage member including a bottom surface, a top surface having at least one downwardly-extending recess, and a plurality of side surfaces, and a planter separate from the drainage member and including a bottom wall abutting the top surface of the drainage member and having at least one drainage aperture in fluid communication with the at least one recess of the drainage member, thereby allowing fluid communication between the at least one aperture and the at least one recess. The at least one recess extends through at least one of the plurality of side surfaces, thereby providing fluid communication between the planter module and an adjacent planter module.
The present inventive green roof system provides coverage of an entire roof area quickly and economically by allowing the associated modules to be grown off-sight in a manner that allows the plant matter to extend upwardly from an associated planter and plant matter within adjacent modules to abut immediately upon installation. Further, the roof system is easy to install at a relatively Low cost. Moreover, the system provides improved water communication and drainage between adjacent modules, allows easy maintenance of the overall system, can be installed easily and quickly by even unskilled personnel, is capable of a Long-operating life, and is particularly well adapted for the proposed use.
These and other advantages of the invention will be further understood and appreciated by those skilled in the art by reference to the following written specification, claims and appended drawings.
For purposes of description herein, the terms “upper”, “lower,” “right,” “left,” “rear,” “front,” “vertical,” “horizontal,” and derivatives thereof shall relate to the invention as oriented in
The reference numeral 10 (
Each planter 16 includes a bottom wall 20, a plurality of walls that include sidewalls 22 and end walls 24 that cooperate with the bottom wall 20 to form an interior space 26, and a plurality of support tabs 28 (
The collar member 18 includes a plurality of walls 30 each having a bottom edge 32 and a top edge 34. In the illustrated example, the collar member 18 comprises two pieces that extend in a rectangular manner about the planter 16. Specifically, the collar member 18 extends about the interior space 26 of the associated planter 16 such that the bottom edge 32 of each of the walls 30 is inserted between the sidewalls and end walls 22, 24 of the planter 16 and the associated support tabs 28, thereby retaining the collar member 18 within the interior space 26 of the planter 16, and such that the walls 30 of the collar member 18 extend upwardly from the top edge 25 of the sidewalls and end walls 22, 24 of the planter 16. Although locking tabs are illustrated between each of the pieces of the collar, overlapping, non-tabbed ends may also be utilized.
In operation, the collar member 18 is inserted into the interior space 26 of planter 16, in a manner described above, and a plant matter that comprises grown plants, plant seedlings, plant seeds and the like, and soil and/or aggregate is also inserted into the interior space 26 of the planter 16. Subsequently, plants are grown within the interior space 26 until such plant matter extends upwardly above the top edge 25 of the sidewalls and end walls 22, 24 of the planter 16. The planter module 14 is then placed in rows or a grid work-like pattern upon a roof 12 (
The proper communication of water between adjacent planters 16 is provided by various elements within the planter 16. As best illustrated in
The reference numeral 14a (
The planter 16 (
The reference numeral 14b (
The reference numeral 14c (
The present inventive green roof system provides coverage of an entire roof area quickly and economically by allowing the associated modules to be grown off-sight in a manner that allows the plant matter to extend upwardly from an associated planter and plant matter within adjacent modules to abut immediately upon installation. Further, the roof system is easy to install at a relatively Low cost. Moreover, the system provides improved water communication and drainage between adjacent modules, allows easy maintenance of the overall system, can be installed easily and quickly by even unskilled personnel, is capable of a long-operating life, and is particularly well adapted for the proposed use.
In the foregoing description, it will be readily appreciated by those skilled in the art, that modifications may be made to the invention without departing from the concepts as disclosed herein, such modifications are to be considered as included in the following claims, unless these claims by their language expressly state otherwise.